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The models satisfactorily predicted the growth of Pseudomonas spp. but not that of Listeria.
The second order polynomial models satisfactorily predicted the effect of salt supplementation on the micellar composition (R2adj > 0.75).
The second-order polynomial models satisfactorily predicted the effect of salt addition on the micellar molar Ca P ratio and the average diameter of the casein micelles, whereas only trends were used in the analysis of the rennet-clotting behavior of salt-supplemented, CO2-treated milk.
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The proposed analytical model satisfactorily predicted the load displacement relationship of all specimens.
This model satisfactorily predicted the chemical physical properties of high and low molecular weight acyclic compounds.
A layered finite-element model satisfactorily predicted the penetration of micro-penetrators using characteristic fracture energies (∼10 pJ μm−2) significantly lower than previously reported (≫100 pJ μm−2).
Both analytical and linear numerical models predicted very well the critical buckling load for all tubes, and nonlinear buckling model satisfactorily predicted axial displacement over the loading history.
The established model satisfactorily predicted dynamic hydrogenation performance considering the gas liquid mass transfer effect and temperature profile in each stage.
The model satisfactorily predicted the forest composition based on the dominant tree species and the relative occurrence of tree species, as well as the qualitative pattern of the tree age distribution.
The model satisfactorily predicted the partial breakthrough curve of bovine serum albumin on a chromatography column packed with large anion-exchange particles with a nominal diameter of 90 μm.
The results of this article show how this model satisfactorily predicts the performance of PBFB gasifiers.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com